Claims
- 1. A longitudinal or perpendicular magnetic recording medium comprising, in this order:a glass or glass-ceramic substrate comprising Li; a sealing layer comprising substantially amorphous NiNb directly deposited on the glass or glass-ceramic substrate; and a magnetic layer, wherein the sealing layer has a thickness of about 450 Å or less and substantially prevents migration of Li from the substrate to the magnetic layer of the magnetic recording medium.
- 2. The magnetic medium according to claim 1, further comprising:an underlayer between the sealing layer and the magnetic layer; and a protective overcoat on the magnetic layer, wherein the substrate comprises about 0.5 to about 32 wt. % lithium oxide (Li2O).
- 3. The magnetic recording medium according to claim 1, wherein the surface of the sealing layer is oxidized.
- 4. The magnetic recording medium according to claim 1, wherein the NiNb sealing layer further comprises about 0.1 wt. % to about 5 wt. % of a material selected from the group consisting of boron, tungsten, tantalum, zirconium and phosphorus.
- 5. The magnetic recording medium to claim further comprising a chromium-vanadium underlayer on the sealing layer, wherein the magnetic layer comprises an alloy of Co, Cr, Pt and Ta.
- 6. The magnetic medium according to claim 1, wherein the substrate comprises about 10.5 to about 32 wt. % lithium oxide (Li2O).
- 7. A method of manufacturing a longitudinal or perpendicular magnetic recording medium, the method comprising:sputter depositing a sealing layer comprising substantially amorphous NiNb directly an a glass or glass-ceramic substrate comprising Li; and sputter depositing a magnetic layer on the sealing layer; wherein the sealing layer has a thickness of about 450 Å or less and substantially prevents migration of Li from the substrate to the magnetic layer of the magnetic recording medium.
- 8. The method according to claim 7 further comprising:sputter depositing an underlayer on the sealing layer prior to said sputter depositing the magnetic layer; and sputter depositing a protective overcoat on the magnetic layer, wherein the substrate comprises about 0.5 to about 32 wt. % lithium oxide (Li2O).
- 9. The method according to claim 7, further comprising oxidizing the surface of the sealing layer.
- 10. The method according to claim 7, wherein the amorphous NiNb sealing layer further comprises about 0.1 wt. % to about 5 wt. % of a material selected from the group consisting of boron, tungsten, tantalum, zirconium and phosphorus.
- 11. The method according to claim 7, comprising sputter depositing the scaling layer using a target comprising at least 12 wt. % Nb.
- 12. The method of claim 1, wherein the substrate comprises about 10.5 to about 32 wt. % lithium oxide (Li2O).
- 13. A longitudinal or perpendicular magnetic recording medium comprising, in this order:a glass or glass-ceramic substrate comprising Li; a sealing means comprising NiNb directly on the substrate having a thickness of about 450 Å or less for substantially preventing migration of Li from the substrate to a magnetic layer of the magnetic recording medium; and the magnetic layer.
RELATED APPLICATIONS
This application claims priority from provisional 60/145,490 filed Jul, 22, 1999, entitled “MEDIUM WITH A NiNb SEED LAYER,” the entire disclosure of which is hereby incorporated herein by reference.
US Referenced Citations (13)
Non-Patent Literature Citations (1)
| Entry |
| Mahvan, N., Ziera, E., and Eltoukhy, A., IEEE Trans. Mag., 29(6), 1993, 3691-3693. |
Provisional Applications (1)
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Number |
Date |
Country |
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60/145490 |
Jul 1999 |
US |